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MACHINE-READABLE MEDIUM, KERATOTOMY SYSTEM, AND KERATOTOMY METHOD

机译:机器可读介质,角膜塑形系统和角膜塑形方法

摘要

A corneal ablation system according to the present invention includes: an operation device for creating an integrated corneal ablation plan for correcting a shape and a curvature error of a cornea based on corneal status data; a laser control unit for controlling a laser module according to an ablation position and an ablation shape of the cornea based on the integrated corneal ablation plan transmitted from the operation device; and the laser module for generating a laser and transmitting the laser to an optical unit under control of the laser control unit, wherein the operation device uses information on a curvature error (low-order aberration) of the cornea, a corneal thickness distribution map, and a posterior corneal shape map, uses the corneal thickness distribution map with respect to the cornea except for a position of an eccentric posterior corneal cone by using the posterior corneal shape map so as to create a partial corneal ablation plan, executes the partial corneal ablation plan to maximally reduce thickness deviation in view of point symmetry so as to eliminate the eccentric posterior corneal cone, offsets curvature fluctuation generated during partial corneal ablation through myopic correction corneal ablation while concentrating the intraocular pressure at the thinned central portion of the cornea so as to generate the posterior corneal cone at the central portion of the cornea, so that the shape of the cornea is corrected into a symmetric corneal shape where the posterior corneal cone is concentrated at the central portion of the cornea, and creates and performs a corneal ablation plan for integrally correcting a defective shape and the curvature error by removing the curvature error through interlocking and executing the conventional low-order ablation with the corneal ablation.
机译:根据本发明的角膜消融系统包括:操作装置,用于创建综合角膜消融计划,该综合角膜消融计划用于基于角膜状态数据来校正角膜的形状和曲率误差。激光控制单元,其基于从操作装置发送来的综合角膜消融计划,根据角膜的消融位置和消融形状来控制激光模块。激光模块,其在激光控制单元的控制下产生激光并将激光传输至光学单元,其中,操作装置使用关于角膜的曲率误差(低阶像差)的信息,角膜厚度分布图,和后角膜形状图,通过使用后角膜形状图,使用偏心后角膜圆锥的位置以外的角膜厚度分布图,创建部分角膜消融计划,执行部分角膜消融考虑到点对称性,计划最大程度地减小厚度偏差,从而消除偏心的后角膜圆锥,通过近视矫正角膜消融来抵消部分角膜消融过程中产生的曲率波动,同时将眼压集中在变薄的角膜中央部位,从而在角膜中央部分产生后角膜锥角膜的pe校正为对称的角膜形状,其中后角膜圆锥体集中在角膜的中央部分,并创建并执行角膜消融计划,以通过消除曲率误差来整体校正缺陷形状和曲率误差与角膜消融联锁并执行常规低阶消融。

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